because a magnet has positive charges and is also a allows electricity current ot flow through, by so doing we end up getting electricity
Electricity can be produced by moving a magnet through a wire coil, which induces a current in the coil. This process is known as electromagnetic induction and is the basis for how generators work to produce electricity. The moving magnetic field created by the magnet interacting with the wire coil creates an electric current to flow in the wire.
For electricity to be produced from a magnet, the magnet needs to move relative to a coil of wire, causing a change in magnetic field. This movement induces an electric current in the wire, generating electricity through a process called electromagnetic induction.
A magnet can create electricity through electromagnetic induction. When a magnet moves near a conductor, such as a wire, it creates a changing magnetic field around the conductor. This changing magnetic field induces a current to flow in the wire, generating electricity.
Yes, electricity can be generated by moving a magnet inside a wire coil. This is known as electromagnetic induction, where the changing magnetic field induces an electric current in the wire coil.
It produces a magnetic field. Vice versa, when you run a magnet past a wire you generate an electric current. Electricity and magnetism are related. If you have electricity you can generate magnetism, if you have a magnet you can produce electricity.
A spinning magnet inside a coil of copper wire will produce electricity.
A bicycle magnet works to generate electricity by creating a magnetic field that interacts with coils of wire in a generator. As the magnet spins with the movement of the bicycle wheel, it induces a current in the wire coils, producing electricity.
Electricity can be produced by moving a magnet through a wire coil, which induces a current in the coil. This process is known as electromagnetic induction and is the basis for how generators work to produce electricity. The moving magnetic field created by the magnet interacting with the wire coil creates an electric current to flow in the wire.
For electricity to be produced from a magnet, the magnet needs to move relative to a coil of wire, causing a change in magnetic field. This movement induces an electric current in the wire, generating electricity through a process called electromagnetic induction.
A magnet can create electricity through electromagnetic induction. When a magnet moves near a conductor, such as a wire, it creates a changing magnetic field around the conductor. This changing magnetic field induces a current to flow in the wire, generating electricity.
a magnet moved through a copper coil makes electricity
You can supercharge a magnet by coiling a metal wire around a magnet then hooking both ends of the wire to a battery. Make sure the wire can conduct electricity and the more coils around the magnet, the better.
Yes, electricity can be generated by moving a magnet inside a wire coil. This is known as electromagnetic induction, where the changing magnetic field induces an electric current in the wire coil.
It produces a magnetic field. Vice versa, when you run a magnet past a wire you generate an electric current. Electricity and magnetism are related. If you have electricity you can generate magnetism, if you have a magnet you can produce electricity.
Michael Faraday
When a magnet moves near a wire, it creates a changing magnetic field. This changing magnetic field induces an electric current to flow in the wire, generating electricity through a process called electromagnetic induction.
Any time a magnet passes through a coil of copper wire (the electro magnet) it produces electricity. In all reallity, you don't really have an electro magnet in a generator. Since the Coil or(field) is making the electricity instead of using electricity, the electro magnet isn't really a magnet; but more like an "anti-magnet" :)